Araştırma Makalesi
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Yıl 2017, Cilt: 3 Sayı: 2, 37 - 40, 01.11.2017

Öz

Kaynakça

  • [1] N.B. McKeown, Phthalocyanine Materials:Synthesis, Structure and Function. Cambridge University Press, UK, 1998. DOI:10.1080/10426919908907573.
  • [2] C.C. Leznoff, A.B.P. Lever, (Eds) Phthalocyanines: Properties and Applications, VCH, New York, Vols. 1-4, 1989-1996.
  • [3] R. George, A.W. Snow, “Synthesis of 3-nitrophthalonitrile and tetra-α-substituted phthalocyanines”. Heterocyclic Chem. 32 (1995) 495-498. DOI: 10.1002/jhet.5570320219.
  • [4] D.D. Perrin, W.L.F. Armarego, Purification of Laboratory chemicals, 2nd Ed., Pergamon, Oxford, 1980.
  • [5] M.J. Frisch, et al, Gaussian 09, Revision E.01, 2009.
  • [6] R. Dennington, T. Keith, J. Millam, Gauss View, Version 5, Semichem Inc., Shawnee Mission, KS, 2009.
  • [7] J.P. Merrick, D. Moran, L. Radom, “An Evaluation of Harmonic Vibrational Frequency Scale Factors”. J. Phys. Chem.A.111(2007) 11683-11700. DOI:10.1021 /jp073974n.
  • [8] N.K. Kınaytürk, H. Oturak, “Identification of Structural and Spectral Features of 2-Amino 4-Chlorobenzoic Acid and 4-Amino 2-Chlorobenzoic Acid: A Comparative Experimental and DFT Study”. Acta Physica Polonica A 130 (2016) 276-281. DOI: 10.12693/APhysPolA.130.276.
  • [9] H. Tereci, İ. Askeroğlu, N. Akdemir, İ. Uçar, O. Büyükgüngör, “Combined Experimental and Theoretical Approaches to the Molecular Structure of 4-(1-formylnaphthalen-2-yloxy)phthalonitrile”. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 96 (2012), 569–577. DOI:10.1016/j.saa.2012.07.005.
  • [10] P.M. Anbarasan, P. S. Kumar, K. Vasudevan, S. M. Babu, V. Aroulmoji, “DFT and TD-DFT Calculations of Some Metal Free Phthalonitrile Derivatives for Enhancement of the Dye Sensitized Solar Cells”. Acta Physica Polonica A, 119 (2011), 395-404. DOI: 10.12693/APhysPolA.119.395.
  • [11] H.T. Akçay, R. Bayrak, E. Şahin, K. Karaoğlu, Ü. Demirbaş, “Experimental and Computational Studies on 4-[(3,5-dimethyl-1H-pyrazol-1-yl)methoxy] phthalonitrile and Synthesis and Spectroscopic Characterization of its Novel Phthalocyanine magnesium(II) and tin(II) Metal Complexes”. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, (2013), 114:531-540. DOI:10.1016/j.saa.2013.05.042.
  • [12] J.R. Ferraro, L.J. Basile, (Editors), Fourier Transform Infrared Spectroscopy: Applications to Chemical Systems (Vol. 1). Academic Press, USA, 1978. 311p. ISBN: 978-0122541018.
  • [13] H. Oturak, N. K. Kınaytürk, G. Şahin, “Structure and Vibrational Studies of ±1-(1H-Benzoimidazol-2-YL) Ethanol, Using DFT Method”, Acta Physica Polonica A (2015), 128, B417-B421. DOI:10.12693 /APhysPolA.128.B-417.
  • [14] X-F. Zhang, D. Jia, A. Song, Q. Liu, “3-(2-Nitro¬phen¬¬oxy)phthalo¬nitrile”. Acta Cryst. E. (2008) 64 356. DOI: 10.1107/S1600536807067797.
  • [15] M.D. Halls, R. Aroca, D.S. Terekhov, A. D’Ascanio, C.C. Leznoff, “Vibrational spectra of halophthalonitriles”. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy (1998), 54 305. DOI:10.1016/S1386-1425(97)00236-9.
  • [16] A. Raj, K. Raju, H.T. Varghese, C.M. Granadeiro, H. I. S. Nogueira, C. Y. Panicker, “IR, Raman and SERS spectra of 2-(methoxycarbonylmethylsulfanyl)-3,5-dinitrobenzene carboxylic acid”. J. Braz. Chem. Soc. vol.20 no.3 São Paulo (2009), DOI: 10.1590/S0103-50532009000300021.
  • [17] H.O. Kalinowski, S. Berger, S. Braun, Carbon-13 NMR Spectroscopy. Chichester, U.K. John Wiley&Sons; 1988. 792 p. ISBN: 978-0-471-91306-1.
  • [18] M. Balcı, Nükleer Manyetik Rezonans Spektroskopisi. Ankara, Türkiye: ODTÜ Yayıncılık, 2004. 452p. ISBN:975-7064-23-8.
  • [19] R.P. Gangadharan, S. S. Krishnan, “Natural Bond Orbital (NBO) Population Analysis of 1-Azanapthalene-8-ol”. Acta Physica Polonica A (2014), 125, 18-22. DOI: 10.12693/APhysPolA.125.18.
  • [20] R. P. Gangadharan, S. S. Krishnan, “First Order Hyperpolarizabilities, NPA and Fukui Functions of Cyclohexanone by Density Functional Theory Method”. Acta Physica Polonica A (2015) 127, 748-752. DOI: 10.12693/APhysPolA.127.748.
  • [21] S. Eryılmaz, M. Gül, E. İnkaya, M. Taş, “Isoxazole derivatives of alpha-pinene isomers: Synthesis, crystal structure, spectroscopic characterization (FT-IR/NMR/GC/MS) and DFT studies”. J. Mol. Structure (2016) 1108, 209-222. DOI:10.1016/j.molstruc. 2015.11.079.
  • [22] K. Mesci, S. Eryılmaz, M. Gül, E. İnkaya, “The investigation of spectroscopic and theoretical methods of bisisoxaoline derivative of norbornadien”. Anadolu University Journal of Science and Technology A-Applied Sciences and Engineering (2016) 17, 641-659. DOI:10.18038/aubtda.267054.
  • [23] T. Koopmans, “Über die Zuordnung von Wellenfunktionen und Eigenwerten zu den Einzelnen Elektronen Eines Atoms”. Physica 1 (1933), 104. DOI: 10.1016/S0031-8914(34)90011-2.
  • [24] R.S. Mulliken, “A New Electroaffinity Scale; Together with Data on Valence States and on Valence Ionization Potentials and Electron Affinities”. J. Chem. Phys. (1934), 2, 782., DOI: 10.1063/1.1749394.
  • [25] R.G. Pearson, “Maximum Chemical and Physical Hardness”. J. Chem. Educ. (1999), (76), 267. DOI: 10.1021/ed076p267.
  • [26] P.K. Chattaraj, U. Sarkar, D.R. Roy, “Electrophilicity Index”. Chem. Rev. (2006), 106, 2065-2091. DOI:10.1021/cr040109f.

The Investigation of the Structural Properties of 3-nitrophthalonitrile Using Spectroscopic and Quantum Chemical Computational Methods

Yıl 2017, Cilt: 3 Sayı: 2, 37 - 40, 01.11.2017

Öz

In
this study, we reported structural properties of the 3-nitrophthalonitrile
compound using spectral techniques such as FT-IR, 1H-NMR, 13C-NMR,
X-ray single crystal diffraction. The quantum chemical computational
calculations were realized with DFT/B3LYP method and 6-311G(d,p) basis set.
Results of the spectral analysis were compared with theoretical molecular
geometry parameters, vibrational frequencies, and chemical shift values. Some
global reactivity structure parameters of the 3-nitrophthalonitrile were
examined using the same method and basis set.

Kaynakça

  • [1] N.B. McKeown, Phthalocyanine Materials:Synthesis, Structure and Function. Cambridge University Press, UK, 1998. DOI:10.1080/10426919908907573.
  • [2] C.C. Leznoff, A.B.P. Lever, (Eds) Phthalocyanines: Properties and Applications, VCH, New York, Vols. 1-4, 1989-1996.
  • [3] R. George, A.W. Snow, “Synthesis of 3-nitrophthalonitrile and tetra-α-substituted phthalocyanines”. Heterocyclic Chem. 32 (1995) 495-498. DOI: 10.1002/jhet.5570320219.
  • [4] D.D. Perrin, W.L.F. Armarego, Purification of Laboratory chemicals, 2nd Ed., Pergamon, Oxford, 1980.
  • [5] M.J. Frisch, et al, Gaussian 09, Revision E.01, 2009.
  • [6] R. Dennington, T. Keith, J. Millam, Gauss View, Version 5, Semichem Inc., Shawnee Mission, KS, 2009.
  • [7] J.P. Merrick, D. Moran, L. Radom, “An Evaluation of Harmonic Vibrational Frequency Scale Factors”. J. Phys. Chem.A.111(2007) 11683-11700. DOI:10.1021 /jp073974n.
  • [8] N.K. Kınaytürk, H. Oturak, “Identification of Structural and Spectral Features of 2-Amino 4-Chlorobenzoic Acid and 4-Amino 2-Chlorobenzoic Acid: A Comparative Experimental and DFT Study”. Acta Physica Polonica A 130 (2016) 276-281. DOI: 10.12693/APhysPolA.130.276.
  • [9] H. Tereci, İ. Askeroğlu, N. Akdemir, İ. Uçar, O. Büyükgüngör, “Combined Experimental and Theoretical Approaches to the Molecular Structure of 4-(1-formylnaphthalen-2-yloxy)phthalonitrile”. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 96 (2012), 569–577. DOI:10.1016/j.saa.2012.07.005.
  • [10] P.M. Anbarasan, P. S. Kumar, K. Vasudevan, S. M. Babu, V. Aroulmoji, “DFT and TD-DFT Calculations of Some Metal Free Phthalonitrile Derivatives for Enhancement of the Dye Sensitized Solar Cells”. Acta Physica Polonica A, 119 (2011), 395-404. DOI: 10.12693/APhysPolA.119.395.
  • [11] H.T. Akçay, R. Bayrak, E. Şahin, K. Karaoğlu, Ü. Demirbaş, “Experimental and Computational Studies on 4-[(3,5-dimethyl-1H-pyrazol-1-yl)methoxy] phthalonitrile and Synthesis and Spectroscopic Characterization of its Novel Phthalocyanine magnesium(II) and tin(II) Metal Complexes”. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, (2013), 114:531-540. DOI:10.1016/j.saa.2013.05.042.
  • [12] J.R. Ferraro, L.J. Basile, (Editors), Fourier Transform Infrared Spectroscopy: Applications to Chemical Systems (Vol. 1). Academic Press, USA, 1978. 311p. ISBN: 978-0122541018.
  • [13] H. Oturak, N. K. Kınaytürk, G. Şahin, “Structure and Vibrational Studies of ±1-(1H-Benzoimidazol-2-YL) Ethanol, Using DFT Method”, Acta Physica Polonica A (2015), 128, B417-B421. DOI:10.12693 /APhysPolA.128.B-417.
  • [14] X-F. Zhang, D. Jia, A. Song, Q. Liu, “3-(2-Nitro¬phen¬¬oxy)phthalo¬nitrile”. Acta Cryst. E. (2008) 64 356. DOI: 10.1107/S1600536807067797.
  • [15] M.D. Halls, R. Aroca, D.S. Terekhov, A. D’Ascanio, C.C. Leznoff, “Vibrational spectra of halophthalonitriles”. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy (1998), 54 305. DOI:10.1016/S1386-1425(97)00236-9.
  • [16] A. Raj, K. Raju, H.T. Varghese, C.M. Granadeiro, H. I. S. Nogueira, C. Y. Panicker, “IR, Raman and SERS spectra of 2-(methoxycarbonylmethylsulfanyl)-3,5-dinitrobenzene carboxylic acid”. J. Braz. Chem. Soc. vol.20 no.3 São Paulo (2009), DOI: 10.1590/S0103-50532009000300021.
  • [17] H.O. Kalinowski, S. Berger, S. Braun, Carbon-13 NMR Spectroscopy. Chichester, U.K. John Wiley&Sons; 1988. 792 p. ISBN: 978-0-471-91306-1.
  • [18] M. Balcı, Nükleer Manyetik Rezonans Spektroskopisi. Ankara, Türkiye: ODTÜ Yayıncılık, 2004. 452p. ISBN:975-7064-23-8.
  • [19] R.P. Gangadharan, S. S. Krishnan, “Natural Bond Orbital (NBO) Population Analysis of 1-Azanapthalene-8-ol”. Acta Physica Polonica A (2014), 125, 18-22. DOI: 10.12693/APhysPolA.125.18.
  • [20] R. P. Gangadharan, S. S. Krishnan, “First Order Hyperpolarizabilities, NPA and Fukui Functions of Cyclohexanone by Density Functional Theory Method”. Acta Physica Polonica A (2015) 127, 748-752. DOI: 10.12693/APhysPolA.127.748.
  • [21] S. Eryılmaz, M. Gül, E. İnkaya, M. Taş, “Isoxazole derivatives of alpha-pinene isomers: Synthesis, crystal structure, spectroscopic characterization (FT-IR/NMR/GC/MS) and DFT studies”. J. Mol. Structure (2016) 1108, 209-222. DOI:10.1016/j.molstruc. 2015.11.079.
  • [22] K. Mesci, S. Eryılmaz, M. Gül, E. İnkaya, “The investigation of spectroscopic and theoretical methods of bisisoxaoline derivative of norbornadien”. Anadolu University Journal of Science and Technology A-Applied Sciences and Engineering (2016) 17, 641-659. DOI:10.18038/aubtda.267054.
  • [23] T. Koopmans, “Über die Zuordnung von Wellenfunktionen und Eigenwerten zu den Einzelnen Elektronen Eines Atoms”. Physica 1 (1933), 104. DOI: 10.1016/S0031-8914(34)90011-2.
  • [24] R.S. Mulliken, “A New Electroaffinity Scale; Together with Data on Valence States and on Valence Ionization Potentials and Electron Affinities”. J. Chem. Phys. (1934), 2, 782., DOI: 10.1063/1.1749394.
  • [25] R.G. Pearson, “Maximum Chemical and Physical Hardness”. J. Chem. Educ. (1999), (76), 267. DOI: 10.1021/ed076p267.
  • [26] P.K. Chattaraj, U. Sarkar, D.R. Roy, “Electrophilicity Index”. Chem. Rev. (2006), 106, 2065-2091. DOI:10.1021/cr040109f.
Toplam 26 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Mühendislik
Bölüm ICCESEN-2016
Yazarlar

Serpil Eryılmaz

Nesuhi Akdemir Bu kişi benim

Ersin İnkaya Bu kişi benim

Yayımlanma Tarihi 1 Kasım 2017
Gönderilme Tarihi 26 Ekim 2017
Kabul Tarihi 28 Ekim 2017
Yayımlandığı Sayı Yıl 2017 Cilt: 3 Sayı: 2

Kaynak Göster

APA Eryılmaz, S., Akdemir, N., & İnkaya, E. (2017). The Investigation of the Structural Properties of 3-nitrophthalonitrile Using Spectroscopic and Quantum Chemical Computational Methods. International Journal of Computational and Experimental Science and Engineering, 3(2), 37-40.